IP Library › Granted Patent US 12,116,994
Granted Patent B2
US 12,116,994 · App. 17/281,964 · Granted Oct 15, 2024

Diaphragm pump

Inventor: Simon Nettesheim (Krefeld, DE)
Assignee: PSG Germany GmbH
F04B53/1047F04B43/02
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Quick Facts
Patent No.
US 12,116,994
App. No.
17/281,964
Granted
Oct 15, 2024
Kind
B2
Abstract

A diaphragm pump with at least one pump chamber, the pump chamber being connected to an inlet chamber via an inlet valve and to an outlet chamber via two outlet valves. The inlet valve having an inlet opening that can be closed by an inlet valve body and the outlet valve respectively having an outlet opening that can be closed by an outlet valve body. The two outlet valves and the inlet valve form a triangle in a projection onto a projection plane transverse to the longitudinal axis of the pump chamber.

Claims (55)

1. A diaphragm pump comprising:

an inlet chamber;

an outlet chamber; and

a pump chamber comprising:

an inlet valve that provides a fluid pathway to the inlet chamber, the inlet valve having an inlet opening that can be closed by an inlet valve body; and

a first outlet valve and a second outlet valve that each provide a fluid pathway to the outlet chamber and each outlet valve having an outlet opening that can be closed by a respective outlet valve body,

wherein the first outlet valve, the second outlet valve, and the inlet valve form an obtuse triangle when projected onto a projection plane transverse to a longitudinal axis of the pump chamber, and

wherein one of the first outlet valve or the second outlet valve is positioned vertically lower than the inlet valve within the projection plane to, thereby, permit emptying of residual fluid from the pump chamber.

2. The diaphragm pump of claim 1 , further comprising a second pump chamber that comprises:

a second inlet valve that provides a respective fluid pathway to the inlet chamber; and

a third outlet valve and a fourth outlet valve that each provide a respective fluid pathway to the outlet chamber,

wherein the third outlet valve, the fourth outlet valve, and the second inlet valve form an obtuse triangle when projected onto a projection plane transverse to a longitudinal axis of the second pump chamber.

3. The diaphragm pump of claim 2 , wherein a projection of straight connecting lines connect adjacent outlet valves configured to be free of intersection with inlet valves on the projection plane transverse to the longitudinal axis of the pump chamber.

4. The diaphragm pump of claim 1 , wherein the first outlet valve is positioned in an edge region of the pump chamber, and the second outlet valve is positioned in an opposite edge region of the pump chamber.

5. The diaphragm pump of claim 1 , wherein the inlet valve is positioned closer to a central axis of the diaphragm pump than the first and second outlet valves.

6. The diaphragm pump of claim 1 , wherein the first outlet valve is offset vertically from the second outlet valve within the projection plane.

7. The diaphragm pump of claim 1 , wherein the inlet chamber and the outlet chamber are at least partially formed in a front plate.

8. The diaphragm pump of claim 1 , wherein the inlet valve is positioned eccentrically in the cross section of the pump chamber.

9. The diaphragm pump of claim 1 , wherein the first and second outlet valves are arranged in a circle or an arc.

10. The diaphragm pump of claim 1 , wherein pump chamber is one of a plurality of pump chambers, and wherein an arrangement of each respective inlet valve and each of the respective first and second outlet valves of the respective pump chambers essentially has rotational invariance with respect to an angle of less than 360° about the central axis.

11. The diaphragm pump of claim 1 , wherein the outlet chamber is configured in an annular shape.

12. The diaphragm pump of claim 1 , wherein the cross section of the pump chamber has at least one essentially straight section on a side wall.

13. The diaphragm pump of claim 1 , wherein the pump chamber is one of a plurality of pump chambers which are arranged in a grid of columns and rows.

14. A device for pumping fluids with a diaphragm pump of claim 1 , further comprising a pump head with a drive system chamber and a drive system, the pump chamber being sealed from the drive system chamber by means of a pump diaphragm.

15. The diaphragm pump of claim 1 , wherein the an inlet opening comprises a plurality of outlet openings that can be closed by the inlet valve body, and

wherein the respective outlet opening of each of the first and the second outlet valve comprises a plurality of outlet openings that can be closed by the respective outlet valve body.

16. A diaphragm pump comprising:

an inlet chamber;

an outlet chamber; and

a pump chamber comprising:

an inlet valve that provides a fluid pathway to the inlet chamber, the inlet valve having an inlet opening that can be closed by an inlet valve body; and

a first outlet valve and a second outlet valve that each provide a fluid pathway to the outlet chamber, and each outlet valve having an outlet opening that can be closed by a respective outlet valve body,

wherein the first outlet valve is offset in a clockwise direction by a first angle from a radial projection extending from a central axis of the pump through a center of the inlet valve,

wherein the second outlet valve is offset in a counter-clockwise direction by a second angle from the radial projection, and

wherein one of the first outlet valve or the second outlet valve is positioned vertically lower than the inlet valve within the projection plane to, thereby, permit emptying of residual fluid from the pump chamber.

17. The diaphragm pump of claim 16 , wherein the an inlet opening comprises a plurality of outlet openings that can be closed by the inlet valve body, and

wherein the respective outlet opening of each of the first and the second outlet valve comprises a plurality of outlet openings that can be closed by the respective outlet valve body.

18. The diaphragm pump of claim 16 , wherein the first outlet valve, the second outlet valve, and the inlet valve form an obtuse triangle when projected onto a projection plane transverse to the central axis of the pump.

19. The diaphragm pump of claim 16 , further comprising a second pump chamber that comprises:

a second inlet valve that provides a respective fluid pathway to the inlet chamber; and

a third outlet valve and a fourth outlet valve that each provide a respective fluid pathway to the outlet chamber,

wherein the third outlet valve is offset in a clockwise direction by a third angle from a second radial projection extending from the central axis of the pump through a center of the second inlet valve, and

wherein the fourth outlet valve is offset in a counter-clockwise direction by a fourth angle from the second radial projection.

20. The diaphragm pump of claim 16 , wherein the first outlet valve is positioned in an edge region of the pump chamber, and the second outlet valve is positioned in an opposite edge region of the pump chamber,

wherein the inlet chamber and the outlet chamber are at least partially formed in a front plate,

wherein the inlet valve is positioned eccentrically in the cross section of the pump chamber,

wherein the first and second outlet valves are arranged in an arc, and

wherein the outlet chamber is configured in an annular shape surrounding the inlet chamber.

21. A diaphragm pump comprising:

a front plate defining a central inlet chamber and an annular outlet chamber surrounding the inlet chamber; and

a valve plate defining a plurality of pump chambers, wherein the diaphragm pump is configured such that during normal operation at least two pump chambers are in vertical alignment with each other, and wherein each pump chamber comprises:

a longitudinal axis that is oriented horizontally during normal operation;

an inlet valve that provides a fluid pathway to the inlet chamber;

a first outlet valve that provides a first fluid pathway from the pump chamber to the outlet chamber, wherein the first outlet valve is positioned vertically above the inlet valve within a projection plane transverse to the longitudinal axis of the pump chamber to, thereby, permit venting of the pump chamber; and

a second outlet valve that provides a second fluid pathway to the outlet chamber, wherein the second outlet valve is positioned vertically below the inlet valve within the projection plane to, thereby, permit emptying of residual fluid from the pump chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2021
From: NETTESHEIM, SIMON
To: PSG GERMANY GMBH
Reel/Frame 056643/0344 →
Priority Claims (1)
DE 10 2018 008 036.7 · Oct 11, 2018 · national
Continuity (1)
Related Publication 20210355934A1 · Nov 18, 2021
Cited By (2)
US 12,253,077 US 12,359,664